Two UCD researchers receive ERC Starting Grants to launch projects on microplastic toxicity and TBI biomechanics, promising breakthroughs in toxicology and public health.
A study in mice found that early life exposure to persistent organic pollutants, such as TCDF, disrupts the gut microbiome and leads to metabolic disorders. The altered microbiome is associated with changes in bacterial species, including Akkermansia muciniphila, which plays a crucial role in overall gut health.
Researchers call for coordinated action to address air pollution's complexity, including elevating policy ambition, expanding regulatory scope, and integrating scientific policymaking. The paper highlights urgent need for clean air globally as health harms arise from lower concentrations.
Researchers have developed a rapid electrothermal mineralization (REM) process that can remediate synthetic chemicals in soil, including per- and polyfluoroalkyl substances (PFAS). The method uses electrical inserts and biochar to heat contaminated soil, converting PFAS into nontoxic minerals.
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Researchers found a significant association between exposure to common environmental toxicants and depressive symptoms, highlighting the need for targeted mechanistic research. The study provides insight into reducing environmental exposures to mitigate depression risk.
The number of calls to US poison centers has increased sharply, with a 233.9% rise in intentional exposures among adults. The severity of unintentional exposures also increased, with 37.4% more cases resulting in severe harm and 65.3% more deaths.
Research from the University of Illinois has found a link between per- and polyfluoroalkyl substances (PFAS) and cardiovascular diseases in postmenopausal women. The study reveals how PFAS chemicals interact with pro-inflammatory pathways, providing potential explanations for the increased risk.
Researchers from Texas A&M University developed a new mobile air monitoring technology that can quickly identify and assess air-borne contaminants produced by natural and man-made disasters. The study applied this method to a real-world disaster, a major industrial fire in Indiana, and found high levels of hazardous chemicals.
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A study found that pharmaceuticals like metoprolol and atenolol, as well as illicit drugs such as cocaine and methamphetamine, were present in over 60% of water samples from Hudson and East Rivers. Enterococci bacteria and rainfall also contributed to drug presence, highlighting the need for improved water management systems
Research reveals PFAS contamination in Australian vegetables, posing a marginal risk to human health, particularly for young girls aged 4-8 with lower body mass index and higher vegetable intake. The study identified plant uptake during cultivation as the primary source of PFAS contamination.
A new AI method developed by Swedish researchers can identify toxic substances based on their chemical structure, potentially replacing animal testing. The method has been shown to be more accurate and broadly applicable than existing computational tools, offering a promising alternative for environmental research and authorities.
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Researchers developed nontoxic, biodegradable, and high-performing lubricant additives for water power turbines using ionic liquids. The ILs demonstrated significant reductions in friction and equipment wear compared to commercial gear oils.
Researchers found widespread data gaps on environmental effects, emphasizing the need for updated information requirements in REACH legislation. They propose utilizing cross-species knowledge and grouping substances to increase understanding.
Researchers developed a framework to measure plastic pollution emissions, estimating Toronto emitted nearly 4,000 tonnes in one year. The approach will help identify major contributors and inform strategies to reduce emissions worldwide.
A Dartmouth-led study found that people in New England, particularly those who frequently consume seafood, face an increased risk of PFAS exposure. The researchers recommend setting safety standards to limit seafood consumption and highlight the need for more stringent public health guidelines.
Researchers found that parents with high chemical intolerance scores were 5.7 times more likely to report a child with autism, highlighting the potential preventive role of avoiding toxic exposures. The study also suggests that reducing exposure prior to and during pregnancy could help prevention.
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Researchers will characterize initial environmental exposures and collect biospecimens and data from residents potentially impacted by the disaster. Investigators will evaluate biospecimens for early signs of liver dysfunction, detecting known liver carcinogen vinyl chloride.
A recent study by UFZ and AWI researchers found significant accumulations of plastics in the North Pacific Ocean, extending far beyond the Great Pacific Garbage Patch. Microplastics were also discovered in a remote marine protected area northwest of Hawaii, challenging previous assumptions about their distribution.
A study of over 2,500 adults found a correlation between PFAS levels and unfavorable lipid profiles, increasing cardiovascular disease risk. Researchers suggest stricter regulation of PFAS to protect health.
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A study analyzing 610 chemicals found in European watercourses detected 504 substances, including pesticides, pharmaceuticals, and PFAS, with 74% of samples exceeding scientific limit values. The chemical footprint concept quantifies the impact of mixtures on aquatic organisms, highlighting the need for further monitoring and evaluation.
A Texas A&M professor will lead a team in evaluating the distribution and potential hazard of volatile organic compounds (VOCs) in East Palestine, Ohio, using a mobile platform. The research aims to inform response methods to measuring air quality following environmental disasters.
A new metabolomics method has been proven to be a reliable approach for grouping chemicals, potentially reducing the use of lab rats. The study's results show that the method can accurately group chemicals into categories, making it a viable alternative to traditional methods.
A new study links increased acetaminophen use during pregnancy, particularly in the second trimester, to noticeable increases in attention and behavior problems in 2-, 3- and 4-year-olds. The study found modest but notable increases in attention-related issues and ADHD-type behaviors with increasing acetaminophen use.
Researchers from Chung-Ang University have discovered tara gum as a promising sustainable material for biodegradable packaging and drug delivery systems. The study examines the modification methods of tara gum polysaccharides, including their applications in pH-sensitive food packaging and controlled-release drug formulations.
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Scientists have discovered a way to predict breast cancer risk based on specific chemical traits, identifying over 900 chemicals that could contribute to the disease. These chemicals are commonly found in consumer products, food, and workplaces, and can alter hormones or damage DNA.
A recent study found that perfluoroalkyl acids (PFAAs) significantly expedite the enzymatic degradation of DNA, even at low concentrations. The research revealed a non-linear dose-effect relationship, with pronounced effects observed even at PFAA concentrations as low as 0.02 mg/L.
Two papers advance understanding of PFOS effects on aquatic life, particularly fish, by testing multiple concentrations and confirming its presence in water. The results indicate that earlier findings were non-repeatable and likely due to biological variation rather than PFOS toxicity.
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Rotifers, microscopic zooplankton found in ocean and freshwater, break down microplastics into nanoplastics. This process creates massive amounts of nanoparticles, posing unknown risks to the environment and human health.
New research from MIT found that germicidal UV lights can produce potentially harmful compounds in indoor spaces. The study suggests that the lights should be used with appropriate ventilation to minimize health risks. Researchers emphasize that the new UV lights are not a replacement for ventilation but rather a complement to it.
A study in the Barents Sea reveals that microplastics are being transported into the Arctic Ocean due to ocean circulation, ice melt, and increased tourism. The highest concentrations were found near sources of pollution and along the coastline.
Researchers measured metabolite concentrations of two herbicides in urine samples from Ecuadorian adolescents and found negative associations with attention, memory, and language. Glyphosate was also linked to social perception issues.
A new study from North Carolina State University finds that freshwater insects lack metabolic responses to salinity, unlike other aquatic animals like crustaceans and snails. Insects' constant metabolism in saline environments may be due to low demand for calcium, which can be toxic to them.
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Researchers at Ohio State University have discovered that ultrasound can break down harmful PFAS compounds in groundwater, rendering them harmless. The technique works by emitting sound waves that compress and heat up the solution, breaking down the stable carbon-fluorine bonds that make up the toxic chemicals.
A new EWG study reveals that humans can serve as sentinels for understanding the impact of toxic PFAS on wildlife health. The study's findings show that over 625 species, including fish, birds, and mammals, are contaminated with PFAS, highlighting the need to tackle these persistent chemicals.
A survey of 10,981 US adults found that toxic molds, fossil fuels, and antibiotics are common causes of chemical intolerance. The study suggests that reducing exposure to mold, pesticides, and other contaminants may help prevent future cases.
A study by researchers at the University of São Paulo found that glitter can hinder the growth of cyanobacteria, a key component of aquatic ecosystems. The toxic effects of glitter on microorganisms have not been well-studied, but the findings suggest that even low concentrations can negatively impact susceptible organisms.
Researchers investigate how exposure to endocrine-disrupting chemicals in plastics may increase atherosclerosis and CVD risk, particularly in children. The study aims to establish a novel therapeutic target for chemical-induced CVD and explore gene-EDC interactions.
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New research reveals that sunscreen contamination may be less harmful to wildlife than previously thought, with exposure posing a low risk to small aquatic animals compared to individual chemicals.
A new study from Chalmers University of Technology reveals that the marine environment is at risk due to ship emissions, particularly from scrubber discharge water and antifouling paint. The cumulative environmental risk in ports was found to be five and thirteen times higher than acceptable limits.
A study by University of Technology Sydney found that plants can remove 97% of toxic compounds, including cancer-causing pollutants, from indoor air in just eight hours. This breakthrough discovery highlights the critical role played by indoor plants and green walls in improving air quality.
A new study by Tulane University found that five out of 60 beverages tested contained elevated levels of toxic metals above federal drinking water standards. Mixed-fruit juices and plant-based milks were more likely to contain these elements, highlighting the importance of moderation in consumption.
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Researchers analyzed 90 samples of raw pheasant dog food and found that 77% exceeded the maximum residue level for lead in animal feed. The mean lead concentration was 34 times higher than in human-consumed pheasant meat, posing health risks to dogs, especially puppies.
A UH-led research team has developed a cost-effective method for removing harmful chemicals and heavy metals from coastal waters by utilizing native aquatic plants. The system, which includes floating aquatic plants and synthetic mats, can help restore ecological balance and keep communities healthy.
Researchers highlight gaps in tritium studies, focusing on species uptake and human health risks through the food chain. A global assessment is needed to minimize tritium's impact on individual species and the environment.
University of Illinois researchers create an electrode that attracts and captures short-chain PFAS, a type of 'forever chemical,' using electrosorption. The design allows for selective fluorophilic interactions, enabling the capture of these persistent contaminants from environment.
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Researchers at Chalmers University of Technology have developed a cellulose-based material that can easily remove 80% of toxic dyes from wastewater using sunlight. The method is cost-effective, simple to set up, and could benefit countries with poor water treatment technologies.
A Keck School of Medicine study found exposure to PFAS, known as 'forever chemicals,' disrupts key biological processes in children and young adults, increasing risk of diseases such as developmental disorders, cardiovascular disease, and cancer. The study highlights the importance of regulating PFAS as a class of chemicals.
A study published in International Journal of Environmental Research and Public Health found that breastfeeding can reduce arsenic exposure in infants compared to formula feeding. Researchers measured arsenic levels in mothers, babies, and breast milk, revealing a clear association between maternal and neonatal arsenic exposure.
A new study from Oregon State University found that both cotton and synthetic microfibers have negative impacts on the behavior and growth of aquatic organisms. The research, published in Frontiers in Marine Science, suggests that increasing awareness and control over fiber release can help mitigate these effects.
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A California study of 99,000 pregnancies found that prenatal cannabis use was more common in areas with greater retail availability of cannabis. The study suggests a larger absolute increase in prenatal cannabis use among those living closer to storefront retailers during the pandemic.
Researchers will use household dust samples to develop a receptor bioactivity component model to predict adipogenic health outcomes. The goal is to improve chemical risk assessment models to account for everyday exposures to hundreds of different chemicals.
A new study assesses the environmental safety of three topical antiseptic compounds, finding high margins of safety for two of them. Researchers conclude that these substances are unlikely to cause ecological harm, providing a sound basis for interpreting future environmental data.
A research team led by Ivano Amelio found that the protein p53 acts as a key to maintaining genomic stability, preventing cancer-promoting mutations. Without p53, cells become more aggressive and prone to acquire genomic instability.
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A recent study found that alligators in the Cape Fear River basin have elevated levels of PFAS chemicals in their blood serum, leading to clinical and genetic indicators of immune system effects. The research team detected a significant association between PFAS exposure and autoimmune-like phenotypes in the affected alligators.
A new study identifies over 57,400 locations across the US as potentially contaminated with PFAS, including industrial facilities and areas where fluorinated firefighting foams have been used. The research team developed a presumptive contamination model to help governments and industries rapidly identify potential exposure sources.
New research published in Environmental Toxicology and Chemistry found that green household consumer products (HCPs) can be either less toxic or more toxic than their conventional counterparts. The study involved testing various HCPs on grass shrimp and Daphnia Magna, a type of freshwater crustacean.
A new study found that 72% of methylmercury concentration variance in largemouth bass can be explained by land cover types. Monitoring efforts should focus on ecoregions with increased sensitivity to atmospheric mercury deposition.
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Researchers analyzed four pesticides' effects on earthworms and springtails in Northern, Central, and Southern Europe. They found varying risks depending on soil compartment and pesticide characteristics. The study highlights the need to consider regional variability when regulating agricultural practices.
A new study by Oregon State University found that Houston residents experienced a significant increase in chemical exposure after Hurricane Harvey, with 75% of chemicals detected at higher concentrations. The study used silicone wristbands to measure exposure to hazardous chemicals, including pesticides and industrial compounds.
A recent study found that approximately 43.5% of rivers worldwide have concerning concentrations of pharmaceutical ingredients, including antidepressants and painkillers. The research highlights the need to reduce emissions of these substances into the environment to mitigate their impact on river health.